Identification and Conformer Analysis of a Novel Redox-Active Motif, Pro-Ala-Ser-Cys-Cys-Ser, in Drosophila Thioredoxin Reductase by Semiempirical Molecular Orbital Calculation
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概要
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Mammalian thioredoxin reductases (TrxRs) contain selenium as selenocysteine (Sec) in the C-terminal redox center –Gly-Cys-Sec-Gly-OH to reduce Trx and other substrates; a Sec-to-Cys substitution in mammalian TrxR yields an almost inactive enzyme. The corresponding tetrapeptide sequence in Drosophila melanogaster TrxR (Dm-TrxR), –Ser-Cys-Cys-Ser-OH, endows the orthologous enzyme with a catalytic competence similar to mammalian selenoenzymes, but implementation of the Ser-containing tetrapeptide sequence SCCS into the mammalian enzyme does not restore the activity of the Sec-to-Cys mutant form (turnover number <2/min). MOPAC calculation suggested that the C-terminal hexapeptide Pro-Ala-Ser-Cys-Cys-Ser-OH functions as a redox center that alleviates the necessity for selenium in Dm-TrxR, and a mutant form of human lung TrxR that mimics this hexapeptide sequence showed improved catalytic turnover (17.4/min for DTNB and 13.2/min for E. coli trx) compared to the Sec-to-Cys mutant. MOPAC calculation also suggested that the dominant form of the Pro-containing hexapeptide is a C+ conformation, which perhaps has a catalytic advantage in facile reduction of the intramolecular disulfide bond between Cys497 and Cys498 by the N-terminal redox center in the neighboring subunit.
- 2011-03-23
著者
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Furutani Y
Okayama Univ. Okayama Jpn
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Inagaki Kenji
Dep. Of Bioresources Chemistry Graduate School Of Natural Sci. And Technol. Okayama Univ. 1-1-1 Tsus
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Inagaki Kenji
Department Of Bioresources Chemistry Graduate School Of Natural Science And Technology Okayama Unive
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Inagaki Kenji
Department Of Biofunctional Chemistry Graduate School Of Natural Science And Technology Okayama Univ
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Tamura T
Department Of Biofunctional Chemistry Graduate School Of Natural Science And Technology Okayama Univ
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Tamura Takashi
Department Of Applied Chemistry Faculty Of Science Science University Of Tokyo
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KUWAHARA Mitsuhiko
Department of Bioresources Chemistry, Graduate School of Natural Science and Technology, Okayama Uni
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Inagaki Kenji
Department Of Bioresources Chemistry Graduate School Of Natural Science And Technology Okayama Unive
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KAWAMURA Kentaro
Department of Bioresources Chemistry, Graduate School of Natural Science and Technology, Okayama Uni
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Kawamura Kentaro
Department Of Bioresources Chemistry Graduate School Of Natural Science And Technology Okayama Unive
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Kuwahara Mitsuhiko
Department Of Bioresources Chemistry Graduate School Of Natural Science And Technology Okayama Unive
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Inagaki K
Department Of Bioresources Chemistry Graduate School Of Natural Science And Technology Okayama Unive
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INAGAKI KENJI
Research Institute for Wakan-Yaku, Toyama Medical and Pharmaceutical University
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